1) Capture • V–I at t₀
Inline, fail-open probes record voltage and current together, preserving the real electrical state behind every bit.
Even a single instant (t₀) yields power (P), out-of-spec amplitude, asymmetric loading, and tap/impedance hints.
2) Reconstruct • Waveforms
From dense paired samples we rebuild the analog waveform, exposing reflections, EMI, clock drift, crosstalk,
and side-channel footprints that don’t survive quantization into ones and zeros.
3) Analyze • Sub-µs Forensics
We detect anomalies in 0.2–1.5 µs windows—PSU sag, connector fatigue, transceiver aging—well before
protocol parsers can construct frames or pass integrity checks.
4) Attribute • Source & Intent
Electrical fingerprints distinguish benign noise from taps, spoofing, and covert interference, enabling
credible attribution at the wire, not just in headers.
5) Secure • Post-Quantum Ready
Physics-truth telemetry pairs with Kyber-class cryptography and quantum-ready control layers to protect
data in motion and command paths against future cryptanalysis.
6) Learn • AI from Physics
Models train on raw V–I features instead of lossy protocol artifacts, improving classification accuracy,
failure prediction, and mission assurance across IT and OT.
Have oscilloscope captures (I²C, 100G/400G Ethernet, PCIe) you want analyzed? Send them to
info@WatcherUSA.com and we’ll show you what the single sample at t₀ already reveals.